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首页> 外文期刊>Analytical and bioanalytical chemistry >Highly sensitive and fast responsive fiber-optic modal interferometric pH sensor based on polyelectrolyte complex and polyelectrolyte self-assembled nanocoating
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Highly sensitive and fast responsive fiber-optic modal interferometric pH sensor based on polyelectrolyte complex and polyelectrolyte self-assembled nanocoating

机译:基于聚电解质复合物和聚电解质自组装纳米涂层的高灵敏和快速响应的光纤模态干涉pH传感器

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摘要

A new fiber-optic pH sensor is demonstrated by coating negatively charged polyelectrolyte complex (PEC-) nanoparticles, made of sodium carboxymethyl cellulose and poly(diallyldimethylammonium chloride) (PDDA), and positively charged PDDA on the surface of a thin-core fiber modal interferometer (TCFMI) with a layer-by-layer (LbL) electrostatic self-assembly method. The fabricated TCFMI pH sensor has different transmission dip wavelengths under different pH values and shows high sensitivities of 0.6 nm/pH unit and -0.85 nm/pH unit for acidic and alkaline solutions, respectively, and short response time of 30-50 s. The LbL electrostatic self-assembly process of a PEC -/PDDA multilayer is traced by quartz crystal microbalance and shows a fast thickness growth. Atomic force microscopy shows the root mean square (RMS) surface roughness of electrostatic self-assembly nanocoating of polyelectrolyte complex/polyelectrolyte is much higher than that of polyelectrolyte/polyelectrolyte due to the larger size of PEC~- colloidal nanoparticles. The enhanced RMS surface roughness and thickness of the nanocoating can shorten the response time and raise the sensitivity of the TCFMI pH sensor, respectively. In addition, the TCFMI pH sensor has highly reversible performance and good durability.
机译:通过在薄芯纤维模态的表面上涂覆由羧甲基纤维素钠和聚二烯丙基二甲基氯化铵(PDDA)制成的带负电的聚电解质复合物(PEC-)纳米颗粒,并带正电的PDDA,可以证明一种新型的光纤pH传感器干涉仪(TCFMI),采用逐层(LbL)静电自组装方法。所制造的TCFMI pH传感器在不同pH值下具有不同的透射下陷波长,并且分别对酸性和碱性溶液显示0.6 nm / pH单位和-0.85 nm / pH单位的高灵敏度,以及30-50 s的短响应时间。 PEC-/ PDDA多层膜的LbL静电自组装过程由石英晶体微量天平追踪,并显示出快速的厚度增长。原子力显微镜显示,由于PEC〜-胶体纳米粒子的尺寸较大,聚电解质复合物/聚电解质的静电自组装纳米涂层的均方根(RMS)表面粗糙度远高于聚电解质/聚电解质。纳米涂层的RMS表面粗糙度和厚度的增加可分别缩短响应时间并提高TCFMI pH传感器的灵敏度。此外,TCFMI pH传感器具有高度可逆的性能和良好的耐久性。

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